1)基本射频和通信概念:非线性,噪声,调制方案
2)射频接收器架构:外差,直接转换,镜像抑制,低IF,现有技术的示例
3)转换电路:换向网络,阻抗和传递函数的频率转换,应用于阻塞抑制,具有谐波抑制的转换,现有技术的示例
4)LNA(低噪声放大器)和混频器设计:窄带和宽带LNA,噪声消除LNA,电压和电流驱动混频器,双频IEEE802.11abg接收器的设计研究
5)低功耗接收器设计:电路合并技术,无LNA接收器
6)软件定义的、认知的和通用的无线电:宽带,高度灵活的无线电,带内阻塞问题,谐波阻塞问题,载波聚合
7)面向通用无线电:RF的信道选择和阻塞抑制,谐波抑制接收器,噪声消除接收器,载波聚合接收器
Course Outline
1) Fundamental RF and Communication Concepts: nonlinearity, noise, modulation schemes
2) RF Receiver Architectures: heterodyne, direct conversion, image rejection, low-IF, examples of state of the art
3) Translational Circuits: Commutated networks, frequency translation of impedances and transfer functions, application to blocker rejection, translation with harmonic rejection, examples of state of the art
4) LNA and Mixer Design: narrowband and broadband LNAs, noise-canceling LNAs, voltage- and current-driven mixers, design study of a dual-band IEEE802.11abg receiver
5) Low-Power Receiver Design: circuit merging techniques, LNA-less receivers
6) Software-Defined, Cognitive, and Universal Radios: broadband, highly-flexible radios, problem of in-band blockers, problem of harmonic blockers, carrier aggregation
7) Towards a Universal Radio: channel selection and blocker rejection at RF, harmonic-reject receivers, noise-canceling receivers, receivers for carrier aggregation